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The Gel-State Electrolytes in Zinc-Ion Batteries
by
Fan, Huiqing
, Li, Maoyun
, Hu, Fulong
, Gao, Guowei
, Ma, Longtao
in
Addition polymerization
/ Aqueous electrolytes
/ Batteries
/ Composition
/ Design and construction
/ Electrodes
/ Electrolytes
/ Energy storage
/ Flexibility
/ gel-state electrolytes
/ Hydrogels
/ Interface stability
/ Lithium
/ Materials
/ Moisture content
/ Polymers
/ Polyvinyl alcohol
/ Rechargeable batteries
/ Self healing materials
/ self-healing
/ thermoreversible
/ Zinc
/ Zinc compounds
/ zinc-ion batteries
2022
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The Gel-State Electrolytes in Zinc-Ion Batteries
by
Fan, Huiqing
, Li, Maoyun
, Hu, Fulong
, Gao, Guowei
, Ma, Longtao
in
Addition polymerization
/ Aqueous electrolytes
/ Batteries
/ Composition
/ Design and construction
/ Electrodes
/ Electrolytes
/ Energy storage
/ Flexibility
/ gel-state electrolytes
/ Hydrogels
/ Interface stability
/ Lithium
/ Materials
/ Moisture content
/ Polymers
/ Polyvinyl alcohol
/ Rechargeable batteries
/ Self healing materials
/ self-healing
/ thermoreversible
/ Zinc
/ Zinc compounds
/ zinc-ion batteries
2022
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The Gel-State Electrolytes in Zinc-Ion Batteries
by
Fan, Huiqing
, Li, Maoyun
, Hu, Fulong
, Gao, Guowei
, Ma, Longtao
in
Addition polymerization
/ Aqueous electrolytes
/ Batteries
/ Composition
/ Design and construction
/ Electrodes
/ Electrolytes
/ Energy storage
/ Flexibility
/ gel-state electrolytes
/ Hydrogels
/ Interface stability
/ Lithium
/ Materials
/ Moisture content
/ Polymers
/ Polyvinyl alcohol
/ Rechargeable batteries
/ Self healing materials
/ self-healing
/ thermoreversible
/ Zinc
/ Zinc compounds
/ zinc-ion batteries
2022
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Journal Article
The Gel-State Electrolytes in Zinc-Ion Batteries
2022
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Overview
Zinc-ion batteries (ZIBs) are receiving increasing research attention due to their high energy density, resource abundance, low-cost, intrinsic high-safety properties, and the appropriate plating/stripping voltage. Gel-state electrolytes possess merits of having a wide electrochemical window, good flexibility, superior water retainability, and excellent compatibility with aqueous electrolytes, which makes them potential candidates for flexible batteries. However, the practical applications of ZIBs with gel-state electrolytes still have some issues of water content easily dropping, poor mechanical stability, and the interface problem. Therefore, the application of hydrogel-based, self-healing gel, gel polymer, thermos-reversible, and other additional functions of gel electrolytes in ZIBs are discussed in this review. Following that, the design of multi-functional gel-state electrolytes for ZIBs is proposed. Finally, the prospect and the challenges of this type of battery are described.
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